Kinetic investigation of NH3 decomposition over Ru-based catalysts: The limiting role of H* surface coverage and its impact on reactor engineering
作者:Yi Qiu, Federico Sascha Franchi, Nicola Usberti, Alessandra Beretta · 发表于:Fuel Processing Technology · 年份:2025 · DOI:10.1016/j.fuproc.2025.108270 · 被引用次数:8 · 研究领域:Ammonia Synthesis and Nitrogen Reduction、Catalytic Processes in Materials Science、Nanomaterials for catalytic reactions
H 2 production via green NH 3 decomposition is a key process in the value chain of renewable energy storage and distribution, but reactor engineering studies are at an early stage due to the still open research on catalyst formulation and reaction kinetics. In this work, the kinetics of NH 3 decomposition are studied over Ru/MgAl 2 O 4 , Ru/γ-Al 2 O 3 and Ru/MgO catalysts, that combine the best-known active metal, Ru, and supports suitable for industrial applications. For all the formulations, NH 3 concentration and H 2 -cofeed are found to negatively affect the conversion, in line with the literature; however, original experiments at varying NH 3 concentration with large H 2 -cofeed unambiguously show that, in the presence of H 2 -rich streams representative of the catalyst application, the intrinsic kinetics have a linear dependence on NH 3 partial pressure and a negative order (−1.5) with respect to H 2 partial pressure, consistent with the hypothesis that ammonia dehydrogenation is rate determining and H* is the most abundant surface intermediate. The same kinetic dependences were obtained over a commercial Ru-based catalyst. The kinetic relevance of hydrogen coverage and the intrinsic first order dependence on NH 3 have two important implications: on a methodological plane, the performance and kinetics of the catalyst under industrially relevant conditions (e.g. pure ammonia) can be captured even under highly diluted NH 3 feeds (which guarantee the rigorous isothermal co...